Device for drilling holes in the axial and radial direction of a blade root of a wind turbine
10596640 ยท 2020-03-24
Assignee
Inventors
Cpc classification
Y10T408/38
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B23Q39/026
PERFORMING OPERATIONS; TRANSPORTING
B23B39/16
PERFORMING OPERATIONS; TRANSPORTING
B23B39/18
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/489
PERFORMING OPERATIONS; TRANSPORTING
B23B41/00
PERFORMING OPERATIONS; TRANSPORTING
B23Q39/02
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/48
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23B39/18
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/48
PERFORMING OPERATIONS; TRANSPORTING
B23B39/16
PERFORMING OPERATIONS; TRANSPORTING
B23B41/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a device (1) for drilling holes in the axial and radial direction of a blade root of a wind turbine, wherein the device comprises: a first base (2), which is to be stationary positioned on the ground; a second base (3), which is moveably mounted to the first base (2) and movable along a first direction; first drive means for positioning the second base (3) along the first direction; a rotary arm (4), which is pivotally mounted to the second base (3) around a main axis (5); second drive means for rotating the rotary arm (4) around the main axis (5); wherein the rotary arm (4) comprises a guide track (7) which extends from a first outer end to a second outer end of the rotary arm (4) thereby passing the main axis (5); first drilling means (8) moveably arranged on the guide track (7), comprising a first drilling tool (8-1) for drilling holes in a second direction (8-2), which second direction (8-2) is perpendicular to the main axis (5) andthird drive means for positioning the first drilling means (8) along the guide track (7); second drilling means (9) mounted on the rotary arm (4), comprising a second drilling tool for drilling holes in a third direction (9-2), which third direction (9-2) is parallel to the main axis (5).
Claims
1. A device (1) for drilling holes in the axial and radial direction of a blade root of a wind turbine, wherein the device (1) comprises: a first base (2), which is to be stationary positioned on the ground; a second base (3), which is moveably mounted to the first base (2) and movable along a first direction (D); first drive means for positioning the second base (3) along the first direction (D); a rotary arm (4), which is pivotally mounted to the second base (3) around a main axis (5), second drive means for rotating the rotary arm (4) around the main axis (5); wherein the rotary arm (4) comprises a guide track (7) which extends from a first outer end (4-1) to a second outer end (4-2) of the rotary arm (4) thereby passing the main axis (5); first drilling means (8) moveably arranged on the guide track (7), comprising a first drilling tool (8-1) for drilling radial holes in a second direction (8-2), which second direction (8-2) is perpendicular to the main axis (5) and third drive means for positioning the first drilling means (8) along the guide track (7); second drilling means (9) mounted on the rotary arm (4), comprising a second drilling tool (9-1) for drilling radial holes in a third direction (9-2), which third direction (9-2) is parallel to the main axis (5); wherein the rotary arm (4) comprises a recess (10), wherein the second drilling means (9) are accommodated in the recess (10) and at least partially moveably arranged on the guide track (7) and which device (1) comprises fourth driving means for positioning the second drilling means (9) along the guide track (7), wherein an imaginary plane defined by the second and third direction (8-2;9-2) includes the main axis (5).
2. The device (1) according to claim 1, wherein the device (1) comprises a plate (9-3) which is moveably arranged on the guide track (7), wherein the second drilling means (9) are arranged on a first side of the plate, the plate (9-3) comprises a passage (9-6) for passing of the second drilling tool (9-1) from the first side to a second, opposite, side of the plate (9-3).
3. The device (1) according to claim 2, wherein the guide track (7) comprises two parallel rails (7-1;7-2), which rails (7-1;7-2) are arranged in a plane centered and perpendicular with respect to the main axis (5).
4. The device (1) according to claim 3, wherein the recess (10) is symmetrical in lengthwise direction of the rotary arm (4).
5. The device (1) according to claim 2, wherein the recess (10) is symmetrical in lengthwise direction of the rotary arm (4).
6. The device (1) according to claim 1, wherein the guide track (7) comprises two parallel rails (7-1;7-2), which rails (7-1;7-2) are arranged in a plane centered and perpendicular with respect to the main axis (5).
7. The device (1) according to claim 6, wherein the recess (10) is symmetrical in lengthwise direction of the rotary arm (4).
8. The device (1) according to claim 1, wherein the recess (10) is symmetrical in lengthwise direction of the rotary arm (4).
Description
(1) The invention will now be described in more detail by the following figures, wherein:
(2)
(3)
(4)
(5) The same components are designated in the different figures with the same reference numerals.
(6)
(7)
(8) The device 1 further comprises second drilling means 9 mounted on the rotary arm 4. The second drilling means 9 are intended for drilling holes in a third direction 9-2, which third direction 9-2 is parallel to the main axis 5 and perpendicular to plane 7-4. The second drilling means 9 are accommodated in a recess 10 and are at least partially moveably arranged over the guide track 7 for positioning the second drilling means 9 at a circle defined by the BCD. The second drilling means 9 are therefore arranged on a second plate 9-3, which is connected to each of the rails 7-1;7-2 of the guide track 7. The device 1 further comprises fourth driving means for positioning the second drilling means 9 along the guide track 7, which are not shown in this figure.
(9) An imaginary plane defined by the second and third direction 8-2;9-2 includes the main axis 5. This feature allows for a single positioning of the rotary arm 4 for drilling an axial and a radial hole in the blade root.
(10) The device 1 can also be used for face milling the blade root or sawing the blade root. Therefore the device 1 can be fitted with face milling means or sawing means 11, which can be arranged on multiple sides of the rotary arm 4. The face milling means 11 are also mounted on guide track in order to move along the side of the rotary arm 4 for face milling the entire face of the blade root.
(11) In the known device of the state of the art the second drilling means are arranged at a similar position as the face milling means 11 of the device 1. The positioning of the second drilling means in the known device is more difficult since the second drilling means are fitted on a separate guide track on the side of the rotary arm.
(12)
(13) The second drilling means 9 are fitted with sensing rods 9-7 which are arranged substantially traverse on second plate 9-2. The sensing rods 9-7 preferably comprises sensing means for sensing the inner and outer circumference of the blade root. The sensing rods can also comprise sensors for measuring the flatness of the blade root end and/or sensors for checking the position of the drilled holes.
(14) The invention is of course not limited to the described and shown preferred embodiment but extends to any embodiment falling within the scope of protection as defined in the claims and as seen in the light of the foregoing description and accompanying drawings.